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Alternative Mooring Systems for a Very Large Offshore Wind Turbine Supported by a Semi-Submersible Floating Platform

机译:半潜式浮动平台支撑的大型海上风力发电机的替代系泊系统

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摘要

As offshore wind turbines supported on floating platforms extend to deep waters, the various effects involved in the dynamics, especially those resulting from the influence of moorings, become significant when predicting the overall integrated system response. The combined influence of waves and wind affect motions of the structure and induce tensile forces in mooring lines. The investigation of the system response under misaligned wind-wave conditions and the selection of appropriate mooring systems to minimize the turbine, tower, and mooring system loads is the subject of this study. We estimate the 50-year return response of a semi-submersible platform supporting a 13.2 MW wind turbine as well as mooring line forces when the system is exposed to four different wave headings with various environmental conditions (wind speeds and wave heights). Three different mooring system patterns are presented that include 3 or 6 mooring lines with different inter-line angles. Performance comparisons of the integrated systems may be used to define an optimal system for the selected large wind turbine.
机译:随着浮式平台上支撑的海上风力涡轮机延伸到深水区域,在预测整体集成系统响应时,动力学所涉及的各种影响(尤其是系泊设备所产生的影响)变得非常重要。波浪和风的综合影响会影响结构的运动并在系泊缆绳中产生拉力。本研究的主题是在风浪未对准情况下对系统响应进行调查,并选择合适的系泊系统以最大程度地减少涡轮机,塔架和系泊系统的负荷。我们估计当系统暴露于具有不同环境条件(风速和波高)的四个不同波浪方向时,支持13.2兆瓦风力涡轮机和系泊缆力的半潜式平台的50年返回响应。提出了三种不同的系泊系统模式,其中包括3或6条系间角度不同的系泊线。集成系统的性能比较可用于为所选大型风力涡轮机定义最佳系统。

著录项

  • 来源
    《35th Wind energy symposium 2017》|2017年|229-239|共11页
  • 会议地点 Grapevine(US)
  • 作者

    Jinsong Liu; Lance Manuel;

  • 作者单位

    University of Texas, Austin, TX 78712, USA;

    University of Texas, Austin, TX 78712, USA;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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